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general:uncertainty_evaluation:start [2021/01/19 15:00] – [Introduction] hausmann | general:uncertainty_evaluation:start [2024/11/06 14:47] (current) – external edit 127.0.0.1 | ||
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+ | ====== Chapter 1.7 - General Uncertainty Evaluation ===== | ||
+ | |||
===== Introduction ===== | ===== Introduction ===== | ||
- | {{ general: | + | |
+ | {{ general: | ||
Uncertainties are a key part of any emission inventory effort. Recording and assessing the inevitable errors made in estimating emissions allows for the inventory team to direct their attention as well as for the public and the scientific community to work with the results presented. Germany employs the statistical approaches as defined in the EMEP/EEA Guidebook to evaluate its inventory' | Uncertainties are a key part of any emission inventory effort. Recording and assessing the inevitable errors made in estimating emissions allows for the inventory team to direct their attention as well as for the public and the scientific community to work with the results presented. Germany employs the statistical approaches as defined in the EMEP/EEA Guidebook to evaluate its inventory' | ||
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Germany currently reports detailed uncertainty information for five pollutants: NO< | Germany currently reports detailed uncertainty information for five pollutants: NO< | ||
- | ^ ^ Base year [kt] ^ 2018 [kt] ^ Trend [%] ^ Method | + | ^ ^ Base year [kt] ^ 2020 [kt] ^ Trend [%] ^ Method |
- | ^ NO< | + | ^ NO< |
- | | |||| MC | -10.09 | +12.36 | -6.88 | | + | | |||| MC | |
- | ^ SO< | + | ^ SO< |
- | | |||| MC | | + | | |||| MC | -8.1 |
- | ^ NMVOC | + | ^ NMVOC |
- | | |||| MC | -14.00 | +21.45 | | + | | |||| MC | |
- | ^ NH< | + | ^ NH< |
- | | |||| MC | -10.08 | +11.30 | -9.59 | +9.80 | | + | | |||| MC | |
- | ^ PM< | + | ^ PM< |
- | | |||| MC | -10.33 | +12.57 | | + | | |||| MC | |
===== Uncertainties per pollutant ===== | ===== Uncertainties per pollutant ===== | ||
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{{general: | {{general: | ||
- | Compared to other pollutants, NO< | + | Compared to other pollutants, NO< |
- | Using the MC simulation, the top three contributors to the overall uncertainty are [[sector:energy:fuel_combustion:transport: | + | Using the MC simulation, the top three contributors to the overall uncertainty are [[sector:agriculture:agricultural_soils:start|3.D.a.1 - Inorganic N-fertilizers]], [[sector: |
==== SO2 ==== | ==== SO2 ==== | ||
- | {{ general: | + | {{general: |
- | SO< | + | SO< |
==== NMVOC ==== | ==== NMVOC ==== | ||
- | {{ general: | + | {{general: |
- | NMVOC emissions and trends are driven by solvent use. While solvent contents of most products | + | NMVOC emissions and trends are driven by solvent use. While solvent contents of most products |
==== NH3 ==== | ==== NH3 ==== | ||
- | {{ general: | + | {{general: |
- | Uncertainty in the NH< | + | Uncertainty in the NH< |
==== PM2.5 ==== | ==== PM2.5 ==== | ||
- | {{ general: | + | {{general: |
- | PM< | + | PM< |
===== Other pollutants ===== | ===== Other pollutants ===== | ||
There is currently no uncertainty assessment for additional air pollutants, heavy metals and POPs. Germany seeks to expand the list of pollutants covered as resources allow. | There is currently no uncertainty assessment for additional air pollutants, heavy metals and POPs. Germany seeks to expand the list of pollutants covered as resources allow. |